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Title: | Arylboronate esters mediated self-healable and biocompatible dynamic G-quadruplex hydrogels as promising 3D-bioinks |
Authors: | Biswas, Ankan Das, Apurba Kumar |
Keywords: | 4 methoxyphenylboronic acid;4 nitrophenylboronic acid;arylboronate ester;benzeneboronic acid;bioink;biomaterial;boronic acid derivative;guanine quadruplex;potassium hydroxide;unclassified drug;biomaterial;boronic acid derivative;ester;adult;Article;bioassay;biocompatibility;cell culture;cell viability;cellular distribution;circular dichroism;controlled study;fibroblast;flow kinetics;human;human cell;hydrogel;mechanical stress;pH;thixotropy;three dimensional printing;cell survival;chemical structure;chemistry;cytology;fluorescence microscopy;hydrogel;pharmacokinetics;skin;synthesis;Biocompatible Materials;Boronic Acids;Cell Survival;Cells, Cultured;Esters;Fibroblasts;G-Quadruplexes;Humans;Hydrogels;Microscopy, Fluorescence;Molecular Structure;Printing, Three-Dimensional;Skin |
Issue Date: | 2018 |
Publisher: | Royal Society of Chemistry |
Citation: | Biswas, A., Malferrari, S., Kalaskar, D. M., & Das, A. K. (2018). Arylboronate esters mediated self-healable and biocompatible dynamic G-quadruplex hydrogels as promising 3D-bioinks. Chemical Communications, 54(14), 1778-1781. doi:10.1039/c7cc09051j |
Abstract: | Extrudable G-quadruplex hydrogels were prepared at physiological pH. Gels with suitable mechanical properties were explored as 3D-bioinks. The 3D printing process is driven by injectability and the highly thixotropic and self-healable nature of the gel. High cell viability and homogeneous cell distribution within the gel make it a promising material as a 3D bioink. © 2018 The Royal Society of Chemistry. |
URI: | https://doi.org/10.1039/c7cc09051j https://dspace.iiti.ac.in/handle/123456789/9078 |
ISSN: | 1359-7345 |
Type of Material: | Journal Article |
Appears in Collections: | Department of Chemistry |
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